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斑马鱼Ext2和Extl3合成硫酸乙酰肝素蛋白聚糖是肢体发育过程中Fgf10信号传导所必需的。

HSPG synthesis by zebrafish Ext2 and Extl3 is required for Fgf10 signalling during limb development.

作者信息

Norton William H J, Ledin Johan, Grandel Heiner, Neumann Carl J

机构信息

European Molecular Biology Laboratory, Meyerhofstrasse 1, 69117 Heidelberg, Germany.

出版信息

Development. 2005 Nov;132(22):4963-73. doi: 10.1242/dev.02084. Epub 2005 Oct 12.

Abstract

Heparan sulphate proteoglycans (HSPGs) are known to be crucial for signalling by the secreted Wnt, Hedgehog, Bmp and Fgf proteins during invertebrate development. However, relatively little is known about their effect on developmental signalling in vertebrates. Here, we report the analysis of daedalus, a novel zebrafish pectoral fin mutant. Positional cloning identified fgf10 as the gene disrupted in daedalus. We find that fgf10 mutants strongly resemble zebrafish ext2 and extl3 mutants, which encode glycosyltransferases required for heparan sulphate biosynthesis. This suggests that HSPGs are crucial for Fgf10 signalling during limb development. Consistent with this proposal, we observe a strong genetic interaction between fgf10 and extl3 mutants. Furthermore, application of Fgf10 protein can rescue target gene activation in fgf10, but not in ext2 or extl3 mutants. By contrast, application of Fgf4 protein can activate target genes in both ext2 and extl3 mutants, indicating that ext2 and extl3 are differentially required for Fgf10, but not Fgf4, signalling during limb development. This reveals an unexpected specificity of HSPGs in regulating distinct vertebrate Fgfs.

摘要

硫酸乙酰肝素蛋白聚糖(HSPGs)已知在无脊椎动物发育过程中,对于分泌型Wnt、Hedgehog、Bmp和Fgf蛋白的信号传导至关重要。然而,关于它们对脊椎动物发育信号传导的影响,人们了解得相对较少。在此,我们报告了对一种新型斑马鱼胸鳍突变体“代达罗斯”的分析。定位克隆确定fgf10是在“代达罗斯”中被破坏的基因。我们发现fgf10突变体与斑马鱼ext2和extl3突变体非常相似,后者编码硫酸乙酰肝素生物合成所需的糖基转移酶。这表明HSPGs在肢体发育过程中对Fgf10信号传导至关重要。与这一观点一致,我们观察到fgf10和extl3突变体之间存在强烈的遗传相互作用。此外,应用Fgf10蛋白可以挽救fgf10突变体中靶基因的激活,但不能挽救ext2或extl3突变体中的靶基因激活。相比之下,应用Fgf4蛋白可以激活ext2和extl3突变体中的靶基因,这表明在肢体发育过程中,ext2和extl3对于Fgf10信号传导而非Fgf4信号传导有不同的需求。这揭示了HSPGs在调节不同脊椎动物Fgf信号方面出人意料的特异性。

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